Novel automatic filling system

By designing a new automatic filling system, the semi-ring table and the slot rotating disc are used to prevent deviation and protective conveying of the filling bottle, and the combination of the vibration feed plate and suction cup mechanism to achieve tightening and filling of the bottle cap, the problem of the existing automatic filling system being inconvenient for multiple filling and tightening cap sealing is solved, and the batch filling efficiency is improved.

CN222922894UActive Publication Date: 2025-05-30ANHUI BOTAI ELECTRONIC MATERIALS CO LTD
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Patent Information

Application Number
CN202421974581.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-15
Publication Date
2025-05-30
Estimated Expiration
2034-08-15

AI Technical Summary

Technical Problem

The existing automatic filling system is inconvenient for convenient rotary multiple filling, inconvenient elastic rotary cap sealing, and inconvenient for protective conveying of filling bottles, which affects the efficiency of batch filling of automatic filling system.

Method used

A new automatic filling system is designed, including a base and a support frame. A semi-ring table and a conveyor are provided in the support frame. A card slot rotating disc is provided in the semi-ring table. The third motor drives the card slot rotating disc to rotate, which drives the filling bottle to rotate in the semi-ring table to prevent the filling bottle from deviating; at the same time, the first motor drives the vibration supply plate to rotate, drives the bottle cap to rotate, and tightens and fill the bottle cap through the suction cup and push rod mechanism; in addition, the third motor drives the card slot rotating disc to rotate, drives the filling bottle to enter the top of the conveyor, and is protected and conveyed by the conveyor.

Benefits of technology

It realizes convenient rotating multiple filling of the automatic filling system, which facilitates capping and capping after filling is completed, improves the efficiency of batch filling of the automatic filling system, and realizes convenient elastic rotating cap sealing and protective conveying of filling bottles.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222922894U_ABST
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Abstract

The utility model discloses a novel automatic filling system which comprises a base and a supporting frame, the supporting frame is installed at the top end of the base, a semi-annular table is installed in the supporting frame, a conveyor is installed on the portion, on one side of the semi-annular table, of the outer wall of the supporting frame, and two clamping groove rotating discs are arranged in the semi-annular table. The clamping groove rotating disc extends to the surface of the conveyor, a filling barrel is installed at the position, on one side of the supporting frame, of the top end of the base, an electromagnetic valve is arranged at the bottom end of the filling barrel, a first connecting frame is installed at the position, on one side of the filling barrel, of the top end of the supporting frame, and a sliding groove frame is installed at the top end of the first connecting frame. According to the utility model, not only is the convenient rotary multi-time filling of the automatic filling system realized, but also the convenient elastic rotary screw cap sealing is facilitated, the protective conveying of filling bottles is facilitated, and the batch filling efficiency of the automatic filling system is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of automatic filling systems, and particularly relates to a novel automatic filling system. Background Technique

[0002] The filling machine is mainly a small category of products in the packaging machine. From the perspective of packaging materials, it can be divided into liquid filling machines, paste filling machines, powder filling machines, and granule filling machines. From the degree of production automation, it is divided into semi-automatic filling machines and fully automatic filling production lines. Filling machines are widely used in the food industry, beverage industry, daily chemical industry, etc. With the rapid development of the social economy, the automation degree of filling machines will be higher and higher. Developing multi-functional, high-efficiency, and simplified automatic filling machines will be the general trend.

[0003] As disclosed in a fully automatic filling system with the authorization announcement number CN205099332U, it includes a frame. A U-shaped conveying component is arranged on the frame. The U-shaped conveying component makes the barrel inlet station and the barrel outlet station of the filling system located at the same end of the filling system. Along the conveying direction of the U-shaped conveying component, an electric controller, a filling component, a capping component, and a cap pressing component are sequentially arranged. The electric controller, the filling component, the U-shaped conveying component, the capping component, and the cap pressing component are all arranged on the frame. The filling component, the U-shaped conveying component, the capping component, and the cap pressing machine component are electrically connected to the electric controller;

[0004] Although it shows stable operation, reliable action, simple operation, labor saving, and high production speed in the actual production process, it does not solve the problems that the existing automatic filling system is not convenient for convenient rotary multiple filling, not convenient for convenient elastic rotary capping and sealing, not convenient for protecting and conveying the filling bottles, which greatly affects the batch filling efficiency of the automatic filling system. Content of the Utility Model

[0005] The purpose of the utility model is to provide a novel automatic filling system to solve the problems put forward in the above background technique that the automatic filling system is not convenient for convenient rotary multiple filling, not convenient for convenient elastic rotary capping and sealing, not convenient for protecting and conveying the filling bottles, and affects the batch filling efficiency of the automatic filling system.

[0006] To achieve the above object, the present utility model provides the following technical solutions: a novel automatic filling system, including a base and a support frame. The support frame is installed at the top end of the base. A semi-circular table is installed inside the support frame. A conveyor is installed on the outer wall of the support frame on one side of the semi-circular table. Two sets of card slot rotating discs are arranged inside the semi-circular table, and the card slot rotating discs extend to the surface of the conveyor. A filling barrel is installed at the top end of the base on one side of the support frame. A solenoid valve is arranged at the bottom end of the filling barrel. A first connecting frame is installed at the top end of the support frame on one side of the filling barrel. A chute frame is installed at the top end of the first connecting frame. A semi-circular frame is installed on the outer wall of the first connecting frame on one side of the chute frame. A first motor is installed at the bottom end of the semi-circular frame, and the output end of the first motor extends into the semi-circular frame. A vibrating feeding tray is installed at the output end of the first motor, and the vibrating feeding tray is slidably connected to the semi-circular frame. An inner baffle is arranged inside the semi-circular frame on one side of the vibrating feeding tray. Outer baffles are symmetrically arranged at the top end of the chute frame on one side of the inner baffle, and the outer baffles extend into the semi-circular frame. A second connecting frame is installed at the top end of the first connecting frame on one side of the chute frame. A first electric push rod is installed on the outer wall of the second connecting frame. A connecting block is arranged outside the second connecting frame on one side of the first electric push rod. The output end of the first electric push rod is connected to the connecting block.

[0007] Preferably, a sliding frame is slidably installed at the top end of the connecting block, and the sliding frame extends outside the connecting block. A second electric push rod is installed at the top end of the connecting block on one side of the sliding frame, and the output end of the second electric push rod is connected to the sliding frame. A suction cup is installed at the bottom end of the sliding frame.

[0008] Preferably, a first support block is installed on the outer wall of the conveyor. A first guiding plate is installed at the top end of the first support block. A first arc-shaped blocking block is installed on the outer wall of the first guiding plate, and the first arc-shaped blocking block extends between the two sets of card slot rotating discs. A protective plate is installed on the outer wall of the conveyor on one side of the first guiding plate.

[0009] Preferably, a second support block is installed on the side of the outer wall of the conveyor away from the first support block. A second guiding plate is installed on the outer wall of the second support block. A second arc-shaped blocking block is installed on the outer wall of the second guiding plate, and the second arc-shaped blocking block extends between the two sets of card slot rotating discs.

[0010] Preferably, a support arm is installed at the top end of the support frame on one side of the semi-circular table. A first cylinder is arranged at the top end of the support arm. A telescopic rod is installed at the output end of the first cylinder, and the telescopic rod is connected to the support arm.

[0011] Preferably, a second motor is installed on the outer wall of the first cylinder. A capping device is arranged at the bottom end of the second motor. A spring is installed at the top end of the capping device, and the output end of the second motor is connected to the capping device through the spring.

[0012] Preferably, a third motor is installed inside the base. The output end of the third motor extends to the outside of the semi-circular platform and is connected to the card slot rotating disc.

[0013] Preferably, a control panel is installed on the outer wall of the base. The output end of the control panel is electrically connected to the input ends of the conveyor, the first motor, the first electric push rod, the second electric push rod, the first cylinder, the second motor, the third motor, and the solenoid valve.

[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows: This automatic filling system not only realizes convenient rotary multiple filling of the automatic filling system, facilitates convenient elastic rotary capping and sealing, facilitates the protective transportation of the filling bottles, and improves the batch filling efficiency of the automatic filling system;

[0015] (1) The conveyor is used to transport multiple groups of filling bottles. With the cooperation of the first arc-shaped stopper, the filling bottles are pushed into the grooves of the card slot rotating disc. The third motor drives the card slot rotating disc to rotate, and the card slot rotating disc drives the filling bottles to rotate inside the semi-circular platform to prevent the filling bottles from running off track. When the filling bottles rotate to the lower part of the filling barrel, the solenoid valve controls the liquid inside the filling barrel to enter the inside of the filling bottles. The third motor drives the card slot rotating disc to rotate, and the card slot rotating disc drives the filled filling bottles to rotate. The first motor drives the vibrating feeding tray to rotate, and the vibrating feeding tray drives the bottle caps to rotate. Blocked by the inner baffle, the bottle caps slide into the inside of the chute frame through the outer baffle. The second electric push rod drives the sliding frame to adjust the height. The sliding frame drives the suction cup to adjust to the top of the bottle cap. The suction cup adsorbs the bottle cap. The first electric push rod drives the connecting block to move horizontally. The connecting block drives the sliding frame and the suction cup to move horizontally. The suction cup drives the bottle cap to move horizontally to the top of the filling bottle. The second electric push rod drives the sliding frame to drive the suction cup to move downward. The suction cup covers the bottle cap on the top of the filling bottle. Then, operate the second electric push rod to reset, so that the suction cup leaves the bottle cap. The same operation is carried out to facilitate the filling of multiple groups of filling bottles, realizing convenient rotary multiple filling of the automatic filling system, facilitating capping after filling, and improving the batch filling efficiency of the automatic filling system;

[0016] (2) Drive the card slot rotating disc to rotate through the third motor, and then drive the filling bottle to rotate through the card slot rotating disc. When the filling bottle rotates to the lower part of the capping device, turn off the third motor again to stop the card slot rotating disc from rotating. Drive the telescopic rod to move by the first cylinder, drive the second motor to adjust the height by the first cylinder, and drive the capping device to adjust the height by the second motor to facilitate the capping device to be stuck at the top of the bottle cap. Drive the capping device to rotate by the second motor. Under the elastic support of the spring, drive the bottle cap to rotate by the capping device to tighten and seal the bottle cap and the filling bottle. Perform the same operation to facilitate tightening multiple groups of bottle caps and filling bottles. Open the third motor through the operation to make the card slot rotating disc resume rotating, drive the filling bottle to rotate by the card slot rotating disc, and change the rotation direction of the filling bottle in an arc by the second arc-shaped block to make the filling bottle enter the top of the conveyor. Under the protection of the second guide plate, convey by the conveyor, realizing the convenient elastic rotation type capping and sealing of the automatic filling system and facilitating the protective conveying of the filling bottle. Description of the Drawings

[0017] Figure 1 It is a three-dimensional structure schematic diagram of the present utility model;

[0018] Figure 2 It is a three-dimensional structure schematic diagram of the first motor of the present utility model;

[0019] Figure 3 It is a front view structure schematic diagram of the present utility model;

[0020] Figure 4 It is a structure schematic diagram of the third motor of the present utility model;

[0021] Figure 5 It is an enlarged three-dimensional structure schematic diagram of the first connecting frame of the present utility model.

[0022] In the figure: 1, base; 2, support frame; 3, semi-circular platform; 4, conveyor; 5, first connecting frame; 6, card slot rotating disc; 7, filling barrel; 8, semi-circular frame; 9, chute frame; 10, first motor; 11, vibrating feeding tray; 12, inner baffle; 13, outer baffle; 14, second connecting frame; 15, first electric push rod; 16, connecting block; 17, sliding frame; 18, second electric push rod; 19, suction cup; 20, support arm; 21, first support block; 22, first guide plate; 23, first arc-shaped block; 24, protective plate; 25, second guide plate; 26, second guide plate; 27, second arc-shaped block; 28, first cylinder; 29, telescopic rod; 30, second motor; 31, capping device; 32, spring; 33, third motor; 34, control panel; 35, solenoid valve. Detailed Embodiment

[0023] To further elaborate on the technical means and effects adopted by the present utility model to achieve the intended utility model purpose, the following will, in conjunction with the accompanying drawings and preferred embodiments, elaborate in detail on the specific implementation manner, structure, features, and effects of the present utility model as follows.

[0024] Please refer to Figures 1-5 , an embodiment provided by the present utility model: a new type of automatic filling system, including a base 1 and a support frame 2. The support frame 2 is installed at the top end of the base 1. Inside the support frame 2, a semi-circular platform 3 is installed. On the outer wall of the support frame 2 on one side of the semi-circular platform 3, a conveyor 4 is installed. Inside the semi-circular platform 3, two groups of card slot rotating disks 6 are provided, and the card slot rotating disks 6 extend to the surface of the conveyor 4. At the top end of the base 1 on one side of the support frame 2, a filling barrel 7 is installed. At the bottom end of the filling barrel 7, a solenoid valve 35 is provided. At the top end of the support frame 2 on one side of the filling barrel 7, a first connecting frame 5 is installed. At the top end of the first connecting frame 5, a chute frame 9 is installed. On the outer wall of the first connecting frame 5 on one side of the chute frame 9, a semi-circular frame 8 is installed. At the bottom end of the semi-circular frame 8, a first motor 10 is installed. The first motor 10 serves as a power output. The output end of the first motor 10 extends into the semi-circular frame 8. The output end of the first motor 10 is installed with a vibrating feeding tray 11, and the vibrating feeding tray 11 is slidably connected to the semi-circular frame 8. Inside the semi-circular frame 8 on one side of the vibrating feeding tray 11, an inner baffle 12 is provided. On the top end of the chute frame 9 on one side of the inner baffle 12, outer baffles 13 are symmetrically provided, and the outer baffles 13 extend into the semi-circular frame 8. At the top end of the first connecting frame 5 on one side of the chute frame 9, a second connecting frame 14 is installed. On the outer wall of the second connecting frame 14, a first electric push rod 15 is installed. The first electric push rod 15 serves as a power output;

[0025] Outside the second connecting frame 14 on one side of the first electric push rod 15, a connecting block 16 is provided. The output end of the first electric push rod 15 is connected to the connecting block 16. At the top end of the connecting block 16, a sliding frame 17 is slidably installed, and the sliding frame 17 extends outside the connecting block 16. On the top end of the connecting block 16 on one side of the sliding frame 17, a second electric push rod 18 is installed. The second electric push rod 18 serves as a power output, and the output end of the second electric push rod 18 is connected to the sliding frame 17. At the bottom end of the sliding frame 17, a suction cup 19 is installed. On the outer wall of the conveyor 4, a first support block 21 is installed. At the top end of the first support block 21, a first guiding plate 22 is installed. On the outer wall of the first guiding plate 22, a first arc-shaped stopper 23 is installed, and the first arc-shaped stopper 23 extends between the two groups of card slot rotating disks 6. On the outer wall of the conveyor 4 on one side of the first guiding plate 22, a protective plate 24 is installed. Inside the base 1, a third motor 33 is installed. The third motor 33 serves as a power output. The output end of the third motor 33 extends outside the semi-circular platform 3 and is connected to the card slot rotating disk 6;

[0026] In use, connect to an external power supply. First, turn on the conveyor 4 by operating the control panel 34. The conveyor 4 conveys multiple groups of filling bottles. The protective plate 24 and the first guide plate 22 protect the conveyed filling bottles. When the filling bottle is conveyed to one side of the first arc-shaped stopper 23, the filling bottle is pushed into the groove of the card slot rotating disk 6 with the cooperation of the first arc-shaped stopper 23. Turn on the third motor 33 by operating the control panel 34. Supported by the base 1, the third motor 33 drives the card slot rotating disk 6 to rotate. Protected by the semi-circular platform 3, the card slot rotating disk 6 drives the filling bottle to rotate inside the semi-circular platform 3 to prevent the filling bottle from running off track. When the filling bottle rotates to the lower part of the filling barrel 7, turn off the third motor 33. Open the solenoid valve 35 by operating the control panel 34. The solenoid valve 35 controls the liquid inside the filling barrel 7 to enter the inside of the filling bottle. When the liquid in the filling bottle reaches the standard, close the solenoid valve 35 to stop the liquid filling. Open the third motor 33. The third motor 33 drives the card slot rotating disk 6 to rotate, and the card slot rotating disk 6 drives the filled filling bottle to rotate. When it rotates to one side of the first connecting frame 5, turn off the third motor 33 to stop the filling bottle from rotating. Open the first motor 10 by operating the control panel 34. Supported by the semi-circular frame 8, the first motor 10 drives the vibrating feeding tray 11 to rotate. The vibrating feeding tray 11 drives the bottle caps to rotate. Blocked by the inner baffle 12, the bottle caps slide into the inside of the chute frame 9 through the outer baffle 13. Open the second electric push rod 18 by operating the control panel 34. The second electric push rod 18 drives the sliding frame 17 to adjust the height. Supported by the sliding of the sliding frame 17 and the connecting block 16, the sliding frame 17 drives the suction cup 19 to adjust to the top of the bottle cap. The suction cup 19 adsorbs the bottle cap. Operate the second electric push rod 18 to reset. Open the first electric push rod 15 by operating the control panel 34. The first electric push rod 15 drives the connecting block 16 to move horizontally. The connecting block 16 drives the sliding frame 17 and the suction cup 19 to move horizontally. The suction cup 19 drives the bottle cap to move horizontally to the top of the filling bottle. The second electric push rod 18 drives the sliding frame 17 to drive the suction cup 19 to move downward. The suction cup 19 covers the bottle cap on the top of the filling bottle. Then operate the second electric push rod 18 to reset to make the suction cup 19 leave the bottle cap. Perform the same operation to facilitate the filling of multiple groups of filling bottles, realizing the convenient rotary multiple filling of the automatic filling system, facilitating capping after filling, and improving the batch filling efficiency of the automatic filling system;

[0027] On one side of the outer wall of the conveyor 4 away from the first support block 21, a second support block 25 is installed. On the outer wall of the second support block 25, a second guiding plate 26 is installed. On the outer wall of the second guiding plate 26, a second arc-shaped stopper 27 is installed, and the second arc-shaped stopper 27 extends between the two card slot rotating disks 6. At the top of the support frame 2 on one side of the semi-circular platform 3, a support arm 20 is installed. At the top of the support arm 20, a first cylinder 28 is provided, and the first cylinder 28 functions as a power output. The output end of the first cylinder 28 is installed with a telescopic rod 29, and the telescopic rod 29 is connected to the support arm 20. On the outer wall of the first cylinder 28, a second motor 30 is installed, and the second motor 30 functions as a power output;

[0028] At the bottom end of the second motor 30, a capper 31 is provided. At the top of the capper 31, a spring 32 is installed, and the output end of the second motor 30 is connected to the capper 31 through the spring 32. On the outer wall of the base 1, a control panel 34 is installed. The output end of the control panel 34 is electrically connected to the input ends of the conveyor 4, the first motor 10, the first electric push rod 15, the second electric push rod 18, the first cylinder 28, the second motor 30, the third motor 33, and the solenoid valve 35;

[0029] During use, by operating to turn on the third motor 33, the card slot rotating disk 6 is driven by the third motor 33 to rotate, and the filling bottle is driven to rotate again by the card slot rotating disk 6. When the filling bottle rotates to the lower part of the capper 31, the third motor 33 is turned off again to stop the rotation of the card slot rotating disk 6. By operating the control panel 34 to turn on the first cylinder 28, the telescopic rod 29 is driven to move by the first cylinder 28. Under the support of the telescopic rod 29 and the support arm 20, the first cylinder 28 drives the second motor 30 to adjust the height. The second motor 30 drives the capper 31 to adjust the height through the spring 32 to facilitate the capper 31 to be stuck on the top of the bottle cap. By operating the control panel 34 to turn on the second motor 30, the capper 31 is driven to rotate by the second motor 30 through the spring 32. Under the elastic support of the spring 32, the capper 31 drives the bottle cap to rotate to tighten and seal the bottle cap and the filling bottle. The same operation is performed to facilitate the tightening of multiple bottle caps and filling bottles. By operating to turn on the third motor 33, the card slot rotating disk 6 is restored to rotate. The filling bottle is driven to rotate by the card slot rotating disk 6, and the rotation direction of the filling bottle is changed in an arc by the second arc-shaped stopper 27 to enable the filling bottle to enter the top of the conveyor 4. Under the protection of the second guiding plate 26, the conveyor 4 conveys it, realizing the convenient elastic rotation type capping and sealing of the automatic filling system and facilitating the protective conveyance of the filling bottle.

[0030] Working principle: When in use, connect to an external power supply. First, the conveyor 4 is used to convey multiple groups of filling bottles. The protective plate 24 and the first guide plate 22 protect the conveyed filling bottles. When the filling bottle is conveyed to one side of the first arc-shaped stopper 23, the filling bottle is pushed into the groove of the card slot rotating disc 6 under the cooperation of the first arc-shaped stopper 23. The third motor 33 drives the card slot rotating disc 6 to rotate, and the card slot rotating disc 6 drives the filling bottle to rotate inside the semi-circular platform 3 to prevent the filling bottle from running off track. When the filling bottle rotates to below the filling barrel 7, operate the third motor 33 to close. The solenoid valve 35 controls the liquid inside the filling barrel 7 to enter the inside of the filling bottle. When the liquid in the filling bottle reaches the standard, close the solenoid valve 35 to stop the liquid filling. The third motor 33 drives the card slot rotating disc 6 to rotate, and the card slot rotating disc 6 drives the filled filling bottle to rotate. When it rotates to one side of the first connecting frame 5, close the third motor 33 to stop the filling bottle from rotating. The first motor 10 drives the vibrating feeding tray 11 to rotate, and the vibrating feeding tray 11 drives the bottle caps to rotate. Under the block of the inner baffle 12, the bottle caps slide into the inside of the chute frame 9 through the outer baffle 13. The second electric push rod 18 drives the sliding frame 17 to adjust the height. The sliding frame 17 drives the suction cup 19 to adjust to the top of the bottle cap. The suction cup 19 adsorbs the bottle cap. Operate the second electric push rod 18 to reset. The first electric push rod 15 drives the connecting block 16 to move horizontally. The connecting block 16 drives the sliding frame 17 and the suction cup 19 to move horizontally. The suction cup 19 drives the bottle cap to move horizontally to the top of the filling bottle. The second electric push rod 18 drives the sliding frame 17 to drive the suction cup 19 to move downward. The suction cup 19 covers the bottle cap on the top of the filling bottle. Then operate the second electric push rod 18 to reset to make the suction cup 19 leave the bottle cap. Perform the same operation to facilitate the filling of multiple groups of filling bottles. Then, by operating to turn on the third motor 33, the third motor 33 drives the card slot rotating disc 6 to rotate, and the card slot rotating disc 6 drives the filling bottle to rotate again. When the filling bottle rotates to below the cap tightener 31, close the third motor 33 again to stop the card slot rotating disc 6 from rotating. The first cylinder 28 drives the telescopic rod 29 to move. The first cylinder 28 drives the second motor 30 to adjust the height. The second motor 30 drives the cap tightener 31 to adjust the height to facilitate the cap tightener 31 to be stuck on the top of the bottle cap. The second motor 30 drives the cap tightener 31 to rotate. Under the elastic support of the spring 32, the cap tightener 31 drives the bottle cap to rotate to tighten and seal the bottle cap and the filling bottle. Perform the same operation to facilitate the tightening of multiple groups of bottle caps and filling bottles. By operating to turn on the third motor 33, the card slot rotating disc 6 resumes rotation. The card slot rotating disc 6 drives the filling bottle to rotate. The second arc-shaped stopper 27 changes the rotation direction of the filling bottle in an arc to make the filling bottle enter the top of the conveyor 4. Under the protection of the second guide plate 26, the conveyor 4 conveys it to complete the use of the automatic filling system.

[0031] The above are only the preferred embodiments of the present utility model and do not impose any formal restrictions on the present utility model. Although the present utility model has been disclosed above with the preferred embodiments, it is not intended to limit the present utility model. Any person skilled in the art can make some changes or modifications to equivalent embodiments with equivalent changes within the scope of the technical solution of the present utility model by using the technical content disclosed above. However, as long as it does not depart from the content of the technical solution of the present utility model, any brief modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present utility model still fall within the scope of the technical solution of the present utility model.

Claims

1. A novel automatic filling system, comprising a base (1) and a support frame (2), characterized in that: A support frame (2) is installed at the top of the base (1), a semi-annular platform (3) is installed inside the support frame (2), a conveyor (4) is installed on the outer wall of the support frame (2) on one side of the semi-annular platform (3), two groups of slot rotating disks (6) are arranged inside the semi-annular platform (3), and the slot rotating disks (6) extend to the surface of the conveyor (4), a filling barrel (7) is installed at the top of the base (1) on one side of the support frame (2), a solenoid valve (35) is arranged at the bottom end of the filling barrel (7), a first connecting frame (5) is installed at the top of the support frame (2) on one side of the filling barrel (7), a chute frame (9) is installed at the top of the first connecting frame (5), a semi-annular frame (8) is installed on the outer wall of the first connecting frame (5) on one side of the chute frame (9), a first motor (10) is installed at the bottom end of the semi-annular frame (8), and the first motor ( The output end of the first motor (10) extends to the interior of the semi-circular frame (8); a vibrating feed tray (11) is installed at the output end of the first motor (10), and the vibrating feed tray (11) is slidably connected to the semi-circular frame (8); an inner baffle (12) is arranged inside the semi-circular frame (8) on one side of the vibrating feed tray (11); an outer baffle (13) is symmetrically arranged at the top of the slide frame (9) on one side of the inner baffle (12), and the outer baffle (13) extends to the interior of the semi-circular frame (8); a second connecting frame (14) is installed at the top of the first connecting frame (5) on one side of the slide frame (9); a first electric push rod (15) is installed on the outer wall of the second connecting frame (14); a connecting block (16) is arranged outside the second connecting frame (14) on one side of the first electric push rod (15); and the output end of the first electric push rod (15) is connected to the connecting block (16).

2. A novel automatic filling system according to claim 1, characterized in that: A sliding frame (17) is slidably mounted on the top of the connecting block (16), and the sliding frame (17) extends to the outside of the connecting block (16); a second electric push rod (18) is mounted on the top of the connecting block (16) on one side of the sliding frame (17), and an output end of the second electric push rod (18) is connected to the sliding frame (17); a suction cup (19) is mounted on the bottom end of the sliding frame (17).

3. A novel automatic filling system according to claim 1, characterized in that: A first support block (21) is mounted on the outer wall of the conveyor (4); a first guide plate (22) is mounted on the top of the first support block (21); a first arc-shaped stopper (23) is mounted on the outer wall of the first guide plate (22); the first arc-shaped stopper (23) extends between the two groups of slot rotating disks (6); and a protective plate (24) is mounted on the outer wall of the conveyor (4) on one side of the first guide plate (22).

4. A novel automatic filling system according to claim 3, characterized in that: A second support block (25) is installed on a side of the outer wall of the conveyor (4) away from the first support block (21), a second guide plate (26) is installed on the outer wall of the second support block (25), a second arc-shaped stopper (27) is installed on the outer wall of the second guide plate (26), and the second arc-shaped stopper (27) extends between the two groups of slot rotating disks (6).

5. A novel automatic filling system according to claim 1, characterized in that: A support arm (20) is installed at the top end of the support frame (2) on one side of the semi-circular platform (3), a first cylinder (28) is provided at the top end of the support arm (20), a telescopic rod (29) is installed at the output end of the first cylinder (28), and the telescopic rod (29) is connected to the support arm (20).

6. A novel automatic filling system according to claim 5, characterized in that: A second motor (30) is mounted on the outer wall of the first cylinder (28); a cover tightener (31) is disposed at the bottom end of the second motor (30); a spring (32) is mounted at the top end of the cover tightener (31); and an output end of the second motor (30) is connected to the cover tightener (31) via the spring (32).

7. A novel automatic filling system according to claim 1, characterized in that: A third motor (33) is installed inside the base (1), and an output end of the third motor (33) extends to the outside of the semi-annular platform (3) and is connected to the slot rotating disk (6).

8. A novel automatic filling system according to claim 1, characterized in that: A control panel (34) is mounted on the outer wall of the base (1), and an output end of the control panel (34) is electrically connected to input ends of the conveyor (4), the first motor (10), the first electric push rod (15), the second electric push rod (18), the first cylinder (28), the second motor (30), the third motor (33), and the solenoid valve (35).

Citation Information

Patent Citations

  • Full -automatic filling system

    CN205099332U